IP Library Granted Patent US 11,844,074
Granted Patent B2
US 11,844,074 · App. 16/948,965 · Granted Dec 12, 2023

System and methods to increase uplink data throughput on a TD-LTE (A) system using efficient management of physical uplink control channels

Inventors: Sudip Bhattacharya (Bangalore, IN); Anshuman Bose (Bangalore, IN); Shashideep Nuggehalli (Bangalore, IN)
Assignee: Marvell Asia Pte Ltd
H04W72/21H04L1/18H04L5/14
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Quick Facts
Patent No.
US 11,844,074
App. No.
16/948,965
Granted
Dec 12, 2023
Kind
B2
Abstract

A new approach is proposed to increase uplink traffic throughput of a time division duplex (TDD) system, e.g., a TD-LTE (A) system, by configuring a plurality of PUCCH parameters for an UE in the TDD system. Specifically, the PUCCH parameters of an uplink channel between the UE in the TDD system are configured and stored in the UE and a base station/cell (eNodeB) of the TDD system in such a manner that the PUCCH region utilized by the UE is restricted to only a few RBs and the PUSCH region of the uplink channel is maximized in terms of RBs available for transmission over the uplink channel, thereby increasing the uplink throughput at the eNodeB level of the TD-LTE (A) system. The configured PUCCH parameters include channel quality indicator (CQI) information/report, which is an indicator carrying the information on how good/bad the communication channel quality is in the TDD system.

Claims (133)

1. A system to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

a dimensioning unit that

configures a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

stores the plurality of parameters for PUCCH configuration at the base station of the TTD system; and

schedules the UE to be within a certain time period from the last time it was scheduled in a downlink so that delay sensitive traffic's part of quality of service (QoS) criteria of the TTD system is met;

said UE configured to

read the plurality of parameters for PUCCH configuration from the base station and store the plurality of parameters at the UE;

configure the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available.

2. The system of claim 1 , wherein:

the UE is a mobile device or a data terminal.

3. The system of claim 1 , wherein:

the plurality of configured PUCCH parameters include a channel quality indicator (CQI) report, which carries information on quality of the uplink channel in the TDD system.

4. The system of claim 3 , wherein:

the dimensioning unit increases data throughput of the physical uplink channel between the UE and the base station by configuring the CQI report of the uplink channel.

5. The system of claim 3 , wherein:

the dimensioning unit sets periodicity of the CQI report and/or the RBs according to the plurality of parameters for PUCCH configuration to increase data throughput of the physical uplink channel.

6. The system of claim 5 , wherein:

the dimensioning unit sets the periodicity of the CQI report to coincide with an allocated rank indicator (RI) configuration index of the TDD system.

7. The system of claim 1 , wherein:

the dimensioning unit generates and transmits an acknowledgement (ACK) report in the form of a hybrid automatic repeat request (HARQ) to increase data throughput of the physical uplink channel, wherein the HARQ is a combination of high-rate forward error-correcting coding and ARQ error-control, on one or more of the PUCCH parameters.

8. The system of claim 1 , wherein:

the dimensioning unit determines and stores a same set of scheduling request (SR) parameters of the TDD system in both the base station and the UE such that the number of RBs available for PUSCH transmission is increased;

the UE is configured to read the scheduling request parameters and set a periodicity and/or RB resources according to the scheduling request parameters.

9. The system of claim 1 , wherein:

the dimensioning unit determines and stores a same set of sounding reference signal (SRS) parameters of the TDD system in both the base station and the UE in such a manner that the number of RBs available for PUSCH transmission is increased;

the UE is configured to read the SRS parameters and set the periodicity and/or RB resources of SRS configuration according to the SRS parameters.

10. The system of claim 3 , further comprising:

a plurality of UEs wherein periodicity of the plurality of UEs in the TDD system for one or more of periodic CQI, scheduling request (SR), and sounding reference signal (SRS) is the same.

11. The system of claim 10 , wherein:

the dimensioning unit distributes the plurality of UEs across available uplink sub-frames of multiple frames of the TDD system wherein the periodicity of such distribution of the plurality of UEs coincides with the periodicity of one or more of the CQI, the SR, and the SRS.

12. The system of claim 10 , wherein:

the dimensioning unit enables mutually exclusive occurrence for a particular UE with respect to other UEs in the plurality of UEs.

13. The system of claim 1 , wherein:

the dimensioning unit handles the RBs and/or an Internet protocol (IP) multimedia subsystem (IMS) signaling in a priority manner in order to meet the QoS criteria of the TDD system.

14. A method to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

configuring a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

storing the plurality of parameters for PUCCH configuration at the base station of the TTD system;

reading the plurality of parameters for PUCCH configuration from the base station and storing the plurality of parameters at a user equipment (UE);

configuring the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available; and

scheduling the UE to be within a certain time period from the last time it was scheduled in a downlink so that delay sensitive traffic's part of quality of service (QoS) criteria of the TTD system is met.

15. The method of claim 14 , wherein:

the plurality of configured PUCCH parameters include a channel quality indicator (CQI) report, which carries information on quality of the uplink channel in the TDD system.

16. The method of claim 15 , further comprising:

increasing data throughput of the physical uplink channel between the UE and the base station by configuring the CQI report of the uplink channel.

17. The method of claim 15 , further comprising:

setting periodicity of the CQI report and/or the RBs according to the plurality of parameters for PUCCH configuration to increase data throughput of the physical uplink channel.

18. The method of claim 17 , further comprising:

setting the periodicity of the CQI report to coincide with an allocated rank indicator (RI) configuration index of the TDD system.

19. The method of claim 14 , further comprising:

generating and transmitting an acknowledgement (ACK) report in the form of a hybrid automatic repeat request (HARQ) to increase data throughput of the physical uplink channel, wherein the HARQ is a combination of high-rate forward error-correcting coding and ARQ error-control, on one or more of the PUCCH parameters.

20. The method of claim 14 , further comprising:

determining and storing a same set of scheduling request (SR) parameters of the TDD system in both the base station and the UE such that the number of RBs available for PUSCH transmission is increased;

reading the scheduling request parameters and setting the periodicity and/or RB resources according to the scheduling request parameters.

21. The method of claim 14 , further comprising:

determining and storing a same set of sounding reference signal (SRS) parameters of the TDD system in both the base station and the UE in such a manner that the number of RBs available for PUSCH transmission is increased;

reading the SRS parameters and setting the periodicity and/or RB resources of SRS configuration according to the SRS parameters.

22. The method of claim 15 , wherein:

periodicity of a plurality of UEs in the TDD system for one or more of periodic CQI, scheduling request (SR), and sounding reference signal (SRS) is the same.

23. The method of claim 22 , further comprising:

distributing the plurality of UEs across available uplink sub-frames of multiple frames of the TDD system wherein the periodicity of such distribution of the plurality of UEs coincides with the periodicity of one or more of the CQI, the SR, and the SRS.

24. The method of claim 22 , further comprising:

enabling mutually exclusive occurrence for a particular UE with respect to other UEs in the plurality of UEs.

25. The method of claim 14 , further comprising:

handling the RBs and/or an Internet protocol (IP) multimedia subsystem (IMS) signaling in a priority manner in order to meet the QoS criteria of the TDD system.

26. A system to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

a dimensioning unit that

configures a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

stores the plurality of parameters for PUCCH configuration at the base station of the TTD system;

said UE configured to

read the plurality of parameters for PUCCH configuration from the base station and store the plurality of parameters at the UE;

configure the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available, wherein the plurality of configured PUCCH parameters include a channel quality indicator (CQI) report, which carries information on quality of the uplink channel in the TDD system, and wherein the dimensioning unit increases data throughput of the physical uplink channel between the UE and the base station by configuring the CQI report of the uplink channel.

27. A system to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

a dimensioning unit that

configures a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

stores the plurality of parameters for PUCCH configuration at the base station of the TTD system;

said UE configured to

read the plurality of parameters for PUCCH configuration from the base station and store the plurality of parameters at the UE;

configure the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available, wherein the plurality of configured PUCCH parameters include a channel quality indicator (CQI) report, which carries information on quality of the uplink channel in the TDD system, wherein the dimensioning unit sets periodicity of the CQI report and/or the RBs according to the plurality of parameters for PUCCH configuration to increase data throughput of the physical uplink channel.

28. A system to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

a dimensioning unit that

configures a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

stores the plurality of parameters for PUCCH configuration at the base station of the TTD system; and

generates and transmits an acknowledgement (ACK) report in the form of a hybrid automatic repeat request (HARQ) to increase data throughput of the physical uplink channel, wherein the HARQ is a combination of high-rate forward error-correcting coding and ARQ error-control, on one or more of the PUCCH parameters;

said UE configured to

read the plurality of parameters for PUCCH configuration from the base station and store the plurality of parameters at the UE;

configure the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available.

29. A system to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

a dimensioning unit that

configures a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

stores the plurality of parameters for PUCCH configuration at the base station of the TTD system;

said UE configured to

read the plurality of parameters for PUCCH configuration from the base station and store the plurality of parameters at the UE;

configure the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available, wherein the plurality of configured PUCCH parameters include a channel quality indicator (CQI) report, which carries information on quality of the uplink channel in the TDD system,

wherein the system further comprises a plurality of UEs wherein periodicity of the plurality of UEs in the TDD system for one or more of periodic CQI, scheduling request (SR), and sounding reference signal (SRS) is the same,

wherein the dimensioning unit distributes the plurality of UEs across available uplink sub-frames of multiple frames of the TDD system wherein the periodicity of such distribution of the plurality of UEs coincides with the periodicity of one or more of the CQI, the SR, and the SRS.

30. A system to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

a dimensioning unit that

configures a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

stores the plurality of parameters for PUCCH configuration at the base station of the TTD system;

said UE configured to

read the plurality of parameters for PUCCH configuration from the base station and store the plurality of parameters at the UE;

configure the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available, wherein the plurality of configured PUCCH parameters include a channel quality indicator (CQI) report, which carries information on quality of the uplink channel in the TDD system,

wherein the system further comprises a plurality of UEs wherein periodicity of the plurality of UEs in the TDD system for one or more of periodic CQI, scheduling request (SR), and sounding reference signal (SRS) is the same, wherein the dimensioning unit enables mutually exclusive occurrence for a particular UE with respect to other UEs in the plurality of UEs.

31. A method to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

configuring a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

storing the plurality of parameters for PUCCH configuration at the base station of the TTD system;

reading the plurality of parameters for PUCCH configuration from the base station and storing the plurality of parameters at a user equipment (UE);

configuring the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available, wherein the plurality of configured PUCCH parameters include a channel quality indicator (CQI) report, which carries information on quality of the uplink channel in the TDD system; and

increasing data throughput of the physical uplink channel between the UE and the base station by configuring the CQI report of the uplink channel.

32. A method to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

configuring a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

storing the plurality of parameters for PUCCH configuration at the base station of the TTD system;

reading the plurality of parameters for PUCCH configuration from the base station and storing the plurality of parameters at a user equipment (UE);

configuring the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available, the plurality of configured PUCCH parameters include a channel quality indicator (CQI) report, which carries information on quality of the uplink channel in the TDD system; and

setting periodicity of the CQI report and/or the RBs according to the plurality of parameters for PUCCH configuration to increase data throughput of the physical uplink channel.

33. A method to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

configuring a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

storing the plurality of parameters for PUCCH configuration at the base station of the TTD system;

reading the plurality of parameters for PUCCH configuration from the base station and storing the plurality of parameters at a user equipment (UE);

configuring the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available; and

generating and transmitting an acknowledgement (ACK) report in the form of a hybrid automatic repeat request (HARQ) to increase data throughput of the physical uplink channel, wherein the HARQ is a combination of high-rate forward error-correcting coding and ARQ error-control, on one or more of the PUCCH parameters.

34. A method to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

configuring a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

storing the plurality of parameters for PUCCH configuration at the base station of the TTD system;

reading the plurality of parameters for PUCCH configuration from the base station and storing the plurality of parameters at a user equipment (UE);

configuring the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available, wherein the plurality of configured PUCCH parameters include a channel quality indicator (CQI) report, which carries information on quality of the uplink channel in the TDD system, and wherein periodicity of a plurality of UEs in the TDD system for one or more of periodic CQI, scheduling request (SR), and sounding reference signal (SRS) is the same; and

distributing the plurality of UEs across available uplink sub-frames of multiple frames of the TDD system wherein the periodicity of such distribution of the plurality of UEs coincides with the periodicity of one or more of the CQI, the SR, and the SRS.

35. A method to support uplink data throughput improvement for a time division duplex (TDD) system, comprising:

configuring a plurality of parameters for a physical uplink control channel (PUCCH) of an uplink channel between a user equipment (UE) and a base station in the TDD system such that a number of radio bearers (RBs) reserved for the PUCCH of the uplink channel utilized by the UE is restricted and reduced to only one or more RBs of the uplink channel and a physical uplink shared channel (PUSCH) of the uplink channel is reserved and increased in terms of RBs made available;

storing the plurality of parameters for PUCCH configuration at the base station of the TTD system;

reading the plurality of parameters for PUCCH configuration from the base station and storing the plurality of parameters at a user equipment (UE);

configuring the PUCCH to increase data throughput of the physical uplink channel according to the plurality of parameters for the PUCCH such that the PUCCH of the uplink channel utilized by the UE is restricted to only the one or more RBs of the uplink channel and the PUSCH of the uplink channel is increased in terms of RBs made available, wherein the plurality of configured PUCCH parameters include a channel quality indicator (CQI) report, which carries information on quality of the uplink channel in the TDD system, and wherein periodicity of a plurality of UEs in the TDD system for one or more of periodic CQI, scheduling request (SR), and sounding reference signal (SRS) is the same; and

enabling mutually exclusive occurrence for a particular UE with respect to other UEs in the plurality of UEs.